Radchem Lab, Department of Chemistry, University of Pavia, Via Taramelli 10, Italy.
Photochem Photobiol Sci. 2018 Jul 11;17(7):923-933. doi: 10.1039/c8pp00053k.
A detailed account on the photophysics of 3-hydroxyflavone (3HF) in 27 organic solvents is reported. Dual fluorescence of neutral 3HF was observed in protic, polar, and weakly polar solvents, endowed with sufficiently high hydrogen bond accepting and/or donating capabilities. Ground-state solvent-induced 3HF deprotonation was reported in 14 cases. 3HF anion photophysics was investigated, and the deprotonation constant Kdep calculated. Previously reported models (based on solute-solvent intermolecular hydrogen bonds) to explain solvent effects on Excited-State Intramolecular Proton Transfer (ESIPT) and on solvent-induced deprotonation have been re-examined and improved in order to rationalize the observed photophysical behaviour in all the studied solvents. Hydrogen bond donor acidity and hydrogen bond acceptor basicity are shown to be key parameters. The results are discussed in the framework of the use of 3HF as an environment-sensitive fluorescent sensor in several research fields, and as a model system in the study of ESIPT reactions. Solvent effects on 3HF reactivity are also discussed, as the role of the surrounding media on the chemistry of flavonols is an emerging topic in natural product research.
本文详细报道了 3-羟基黄酮(3HF)在 27 种有机溶剂中的光物理性质。在质子性、极性和弱极性溶剂中观察到中性 3HF 的双荧光,这些溶剂具有足够高的氢键接受和/或供体能力。报道了在 14 种情况下,基态溶剂诱导的 3HF 去质子化。研究了 3HF 阴离子的光物理性质,并计算了去质子化常数 Kdep。为了合理解释在所有研究溶剂中观察到的光物理行为,重新检查和改进了先前报道的(基于溶质-溶剂分子间氢键)解释溶剂对激发态分子内质子转移(ESIPT)和溶剂诱导去质子化影响的模型。氢键供体酸度和氢键受体碱度被证明是关键参数。讨论了 3HF 在几个研究领域作为环境敏感荧光传感器的应用,以及作为 ESIPT 反应研究的模型体系。还讨论了溶剂对 3HF 反应性的影响,因为周围介质对黄酮醇化学的影响是天然产物研究中的一个新兴课题。